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左锁骨下动脉覆膜支架几何形状对胸主动脉腔内修复术中血流动力学的影响。

Influence of Left Subclavian Artery Stent Graft Geometry on Blood Hemodynamics in Thoracic Endovascular Aortic Repair.

作者信息

Xue Song, Lu Tiandong, Hu Wenqing, Xia Zeyang, Zhang Jun, Lu Xinwu, Xiong Jing

机构信息

Department of Vascular Surgery, Shanghai Ninth People's Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai 200011, China.

Shenzhen Institutes of Advanced Technology, Chinese Academy of Sciences, Shenzhen 518055, China.

出版信息

J Biomech Eng. 2025 Feb 1;147(2). doi: 10.1115/1.4067448.

Abstract

The objective of this research is to analyze the hemodynamic differences in five configurations of left subclavian artery (LSA) stent grafts after LSA endovascular reconstruction in thoracic endovascular aortic repair (TEVAR). For numerical simulation, one three-dimensional thoracic aortic geometry model with an LSA stent graft retrograde curved orientation was reconstructed from post-TEVAR computed tomography angiography (CTA) images, and four potential LSA graft configurations were modified and reconstructed: three straight (0, 2, and 10 mm aortic extension) and one anterograde configuration. The blood perfusion of the LSA, flow field, and hemodynamic wall parameters were analyzed. The vortex evolution process was visualized by the Liutex method which enables accurate extraction of the pure rigid rotational motion of fluid and is highly suitable for identifying the vortex structure of blood flow near the vessel wall. The average flow in the retrograde configuration decreased by 11.2% compared to that in the basic configuration. When the LSA stent graft extends in the aortic lumen, flow separation is observed, and vortex structures begin to form at the proximal inferior arterial geometry and the wall of the extension in late systole. A greater extension length and inflow angle upstream resulted in a greater oscillatory shear index (OSI) and relative residence time (RRT) on the nearby wall of the posterior flow field of the extension. Shorter intra-aortic extension length (<10 mm) and smaller LSA stent graft inflow angle (<120 deg) may be recommended in TEVAR, considering LSA perfusion and minimized flow field disturbance.

摘要

本研究的目的是分析胸主动脉腔内修复术(TEVAR)中左锁骨下动脉(LSA)血管腔内重建术后五种LSA支架移植物构型的血流动力学差异。为进行数值模拟,从TEVAR术后计算机断层扫描血管造影(CTA)图像重建了一个具有LSA支架移植物逆行弯曲取向的三维胸主动脉几何模型,并对四种潜在的LSA移植物构型进行了修改和重建:三种直型(主动脉延伸0、2和10毫米)和一种顺行构型。分析了LSA的血液灌注、流场和血流动力学壁参数。通过Liutex方法可视化了涡旋演化过程,该方法能够准确提取流体的纯刚体旋转运动,非常适合识别血管壁附近血流的涡旋结构。逆行构型的平均流量与基本构型相比下降了11.2%。当LSA支架移植物在主动脉腔内延伸时,会观察到血流分离,并且在收缩期末期,在近端下动脉几何形状和延伸部分的壁处开始形成涡旋结构。延伸长度越大和上游流入角度越大,导致延伸部分后向流场附近壁上的振荡剪切指数(OSI)和相对停留时间(RRT)越大。考虑到LSA灌注和最小化流场干扰,在TEVAR中可能建议采用较短的主动脉内延伸长度(<10毫米)和较小的LSA支架移植物流入角度(<120度)。

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